Showing posts with label genetics. Show all posts
Showing posts with label genetics. Show all posts

Saturday, April 21, 2012

Human Genetic Diversity: Functional Consequences for Health and Disease Review

Human Genetic Diversity: Functional Consequences for Health and Disease
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This is a great book for learning more about human genetics. Its diagrams are not always well placed with the text, so it loses one star for lack of clarity. Keep in mind that there is an expected knowledge of basic biology including the cell and its basic DNA-related processes. Good textbook for college-level class.

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The secrets of our genetic heritage are finally being unlocked. The massive scientific effort to sequence the human genome is in fact just the beginning of a long journey as the extraordinary genetic diversity that exists between individuals becomes clear. Work in this field is yielding profound insights into the wider implications for understanding biology, human health and history. It promises much: to understand our evolutionary origins, to define us as individuals, to predict our risk of disease and to more effectively understand, treat and prevent illness. Genetics can help us understand both rare inherited disorders and common multifactorial disease like asthma, heart disease and diabetes. Huge investments are being made and great advances have been achived, but the challenges remain daunting. This book provides an authoritative overview of this topical and very rapidly advancing field of biomedical research. Human Genetic Diversity provides a concise, authoritative overview of human genetic diversity. It documents the insights that human genetics have brought to an understanding of human evolution and history, focusing on the implications of human genetic diversity for disease susceptibility and treatment. The book describes the genetic basis for diseases such as HIV, AIDS, Crohn's disease, asthma and type I diabetes. It also examines the emerging field of pharmacogenomics and individualized medicine. Human genetic variation has implications across a broad range of disciplines (both biological and medical) and this text neatly consolidates work in diverse fields to highlight common themes and principles. An accessible style and the extensive use of illustrations promote its relevance to a broad audience ranging from those interested in human and population genetics to molecular biologists, evolutionary biologists, biological anthropologists and individuals working in the health sciences and clinical medicine.

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Thursday, March 22, 2012

How Genes Influence Behavior Review

How Genes Influence Behavior
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One would expect an introductory textbook by these three scientists to be good, and it is. It covers behavioural and molecular methods, using examples from the authors' own work in psychiatric genetics. The field is put in historical context, with the false turnings explored, as well as the major breakthroughs. The authors take us on a journey through family, adoption and twin studies, on to the history of molecular psychiatric genetics, starting with the early, and usually unreplicated, linkage studies, through genome wide association studies and animal models using rodents and drosophila. Concepts are explained with a minimum of technical and statistical detail, making the book accessible to a wide readership. What sets this book apart from others on this topic are the personal and often witty accounts of doing research. Kendler's anecdote of a family study of schizophrenia in Ireland is particularly engaging, including an encounter with an elderly grandmother who expressed indignation that he should be driving around all over the place interviewing people to find out if mental illness ran in families. "'Why everybody knows that! Take the O'Donnells for example. They are as mad as can be and it goes back generations." (p. 12). One also gets a sense of the hard graft involved in doing research in this area: Kendler estimated that his study took 18 person years just to gather the data, and evidently required persistence and a willingness to work heroically antisocial hours by the research team.
Anyone contemplating a research career in molecular genetics would do well to read the paragraph on p 34-35 debunking popular assumptions about life in the laboratory: "A combination of intelligence and technology applied to taxing but interesting biological problems leads to ground-breaking discoveries that could cure disease or change our understanding of the universe." Well, no. The work is dull, repetitive, and usually unsuccessful. And if after years of work you do find something interesting, your laboratory head will ask: "Why is this finding wrong?". In fact, I suspect only really good laboratory heads do that - the bad ones rush gleefully into print, which is why the field is littered with nonreplicable findings. But as Flint et al point out, you need to ask it because it's embarrassing to publishing something that is wrong, your peers will do their best to find flaws in the work, and, most importantly, "it's only by publishing findings that are robust to any possible criticism that we'll make any progress". A refreshingly old-fashioned take on the scientific process that is all-too-often forgotten in the current climate where we're all encouraged to publish as much as we possibly can, and where a dramatic but non-replicable result may get you two papers in a high-impact journal: one for the original finding, and the other for the failure to replicate.


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How important are genetic influences on behavior?How many genes influence an individual behavior, and how much influence does a single gene have? How do genes interact with the environment to influence the development of behavioral traits?What are the differences between humans and 'simpler' organisms when it comes to the genetic control of behavior? How Genes Influence Behavior is a unique introduction to behavioral genetics, which combines conceptual rigor with accessibility to answer questions such as these--answers that carry important implications for the nature of who we are. Offering unparalleled insights into how behavioral genetics is probed through real-world research, it considers evidence from humans and the major model organisms of mouse, fruit-fly and nematode worm to demonstrate how much of our current understanding of the genetic basis of human behavior stems from our exploration of other animals. Further, it uses these studies to connect the key themes of the book--the nature of gene action, and the inter-relationship of genetic and environmental influences on behavior-across organisms, highlighting key commonalities and differences.The book also shows the major impact that neurobiology is having on our understanding of the field, to give a true depiction of behavioral genetics in the 21st century. However, care is taken throughout not to overwhelm the reader with scientific detail. Instead, the authors make the book fun to read without sacrificing accuracy or devaluing the complexity of the subject matter: they 'personalize' the science, mixing more standard narrative with biographical details to make the subject come alive. With the media filled with talk of the discovery of genes 'for' an array of human behaviors, there has never been a more pressing need for today's students--tomorrow's researchers--to be equipped with a clear, balanced view of the field. How Genes Influence Behavior is the perfect guide for all students, delivered in the words of three researchers who have witnessed first-hand the emergence of this fascinating field, and whose own investigations have been central to our current understanding of it.Online Resource CentreFor Instructors* Figures from the book, available to downloadFor students* Hyperlinks to primary literature cited in the text

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Tuesday, January 10, 2012

The Cell Cycle: An Introduction Review

The Cell Cycle: An Introduction
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Really, you need to read this book. Nowadays nobody can ignore the cell cycle since everything in biology either feeds into the cell cycle, is controlled by the cell cycle, or, in most cases, both. Because the cell cycle is so important, there has been a flood of information about its molecular components, but what this book does is take all that information and place it in context by laying out the overall computational logic of cell cycle control. So, although the book does a great job summarizing the extant data at the time of its writing (which is now a little bit out of date unfortunately), its real value is in providing the conceptual hooks onto which the data can be hung. In this regard, it is still just as effective as it was when it first came out in print, and it is still highly recommended for anyone interested in this subject.

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In the last decade there has been a revolution in our comprehension of how cells grow and divide.Results from experiments on yeast, embryos, and cultured mammalian cells have unified seemingly disparate viewpoints into a single set of principles for normal cellular reproduction in plants, animals and bacteria.Written by two leading participants in that revolution, The Cell Cycle provides the first thorough, authoritative account of the new philosophy of normal cellular reproduction and how it emerged.It is a vivid portrayal of the molecular logic of the cell: how the cell engine induces DNA replication and chromosome replication; how the integrity of genetic information is preserved; and how cell size and environmental signals regulate the cycle of growth and division.By describing important breakthroughs in their historical and experimental context, The Cell Cycle traces the development of the new vision of cell biology and shows its relevance to other areas of modern biology. It is the ideal introduction to the current understanding of cell growth and division for advanced undergraduate and graduate level cell biology courses.

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Monday, January 9, 2012

Gorlin's Syndromes of the Head and Neck (Oxford Monographs on Medical Genetics) Review

Gorlin's Syndromes of the Head and Neck (Oxford Monographs on Medical Genetics)
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This is a complete review of almost all syndromes affecting the face, with complete information about the most important conditions and very good references until june 2001. Congratulations to the authors for their great effort to put together a lot of information very useful to phisicians, dentists and many other specialists.

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This classic text covers over 700 different genetic syndromes affecting body structures, and has established itself as the definitive, comprehensive work on the subject. The discussion covers the phenotype spectrum, epidemiology, mode of inheritance, pathogenesis, and clinical profile of each condition, all of which is accompanied by a wealth of illustrations. The authors are recognized leaders in the field, and their vast knowledge and strong clinical judgment will help readers make sense of this complex and burgeoning field. New syndromes have been added to this edition and existing syndromes have been updated. This book will appeal to clinical geneticists, pediatricians, neurologists, head and neck surgeons, otolaryngologists, and dentists.

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Saturday, December 31, 2011

Medical Genetics Review

Medical Genetics
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A gem. Information about genetics is very very well presented. I recommend this book to everyone who use the word genetic, as science of genetics is the future that is upon us now. Be better informed.
Tariq Ahmed, MD MPH , Kirkland, WA.

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Highly Commended in the 2006 BMA Medical Book Competition (Basic and clinical sciences)Medical Geneticsprovides medical and biomedical science students with an understanding of the basic principles of human genetics as they relate to clinical practice. Each of the initial chapters focuses on a traditional cornerstone of human genetics (molecular genetics, cytogenetics, Mendelian inheritance, polygenic inheritance, population genetics) with a major emphasis on clinical relevance. These are followed by consideration of subjects of specific medical importance such as the haemoglobinopathies, developmental genetics, cancer genetics and pharmacogenetics, with due attention to topical and evolving issues such as pharmacogenomics, gene therapy and therapeutic cloning. The final chapters provide an explanation of the genetically related clinical skills and competencies expected of a medical student, together with an overview of the principles of clinical genetics, a rapidly developing clinical specialty which now impinges on almost every aspect of medical practice. Online Resource CentreMedical Genetics is accompanied by an extensive Online Resource Centre, which offers a wealth of additional materials, including:DT Multiple Choice Questions and Extended Matching Questions, to help you test your knowledge of each chapter of the book DTHyperlinked bibliography offering direct links to online articles cited in the book DTCase Celebres: additional case celebres to those in the book DTOMIM Database Links, providing hyperlinks to the NIH's database of genetic diseases DTPedigree Examples, giving guidance on constructing family trees DTBonus material from other seminal genetics titles published by Oxford University Press

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Saturday, December 3, 2011

Genetic Prehistory in Selective Breeding: A Prelude to Mendel Review

Genetic Prehistory in Selective Breeding: A Prelude to Mendel
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Contains Bakewell's works on line breeding. Excellent book for those who are serious on improving the genetics of their cattle herds.

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Long before Mendel's ground-breaking discoveries about heredity, sheep breeders in the eighteenth and nineteenth centuries were transforming the appearance and qualities of their livestock by combining various traits of body and wool into new patterns. Exploiting what were then novel procedures - individual trait selection, close inbreeding and progeny testing - they demonstrated inheritance from both sexes and showed how it could be stabilized. This remarkable book examines how sheep breeding contributed to the early knowledge of heredity and how the theory was pursued during the early nineteenth century in Brno, where Mendel would later define the basis of genetics. Drawing from extensive records and scientific and social literature, the authors tell the fascinating story of experimental sheep breeding from a pan-European perspective, stressing its progress through empirical discovery and the spread of Merino sheep into northern Europe and Australia. The book provides detailed coverage of the Brno Sheep Breeder's Society and its role in the development of ideas about heredity, a comprehensive review of Robert Bakewell's sheep breeding achievements, and the impact of this work on Mendel's own education and professional research. This profound and entertaining work is destined to be a classic for historians and students of science as well as practitioners in all areas of scientific study.

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Thursday, November 24, 2011

Evolutionary Genetics Review

Evolutionary Genetics
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I am a Physicist trying to learn a bit about Genetics. I take the book seriously and I solve the problems and the computer proyects that the author poses. The book is highly readable and interesting (just some few type mistakes). This I warranty since I have had not the need of much consulting outside the book and this is not my field of research!!. The author goes from the basics up to some remarks of unsolved problems and controversy.

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The first edition of Maynard Smith's Evolutionary Genetics (first published in 1989) was welcomed as the first comprehensive introduction to the molecular and population aspects of evolutionary genetics, and has now become one of the definitive textbooks in the field. Aimed at advanced undergraduates in the biological sciences, the book covers basic population and quantitative genetics, evolutionary game theory, behavioral evolution, sexual selection and mating systems, speciation, and macroevolution. Theory and mathematics are clearly explained, with the aid of problems at the ends of the chapters, and the author takes care to place these within the context of questions central to current research in evolutionary biology.This Second Edition has been revised and updated throughout to reflect new findings and research interests. In the chapter on phenotypic evolution, the author incorporates new research on game theory. The discussions of sex and host-parasite interactions have been extensively revised and the author has added a new chapter on molecular genetics and the reconstruction of evolutionary history. Evolutionary Genetics remains the essential textbook for advanced undergraduates seeking a clear, comprehensive, and up-to-date account of the theory of evolutionary biology.

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Wednesday, November 9, 2011

Genetics of the Fowl: The Classic Guide to Chicken Genetics and Poultry Breeding Review

Genetics of the Fowl: The Classic Guide to Chicken Genetics and Poultry Breeding
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This book is an excellent review of poultry genetics, a historical view. It is not up to date on current genetics however.

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GENETICS OF THE FOWL has been the indispensible companion of chicken breeders since its introduction in 1949. Chapters include the genetics of plumage, egg production, body size, disease resistance, and much more. The readable style of the book is a refreshing change from modern tomes written for an audience of researchers. Long out of print, this book has been brought back by Norton Creek Press as part of its Norton Creek Classics line.The late F. B. Hutt was Professor of Animal Genetics at Cornell University.

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Sunday, November 6, 2011

Evolutionary Ecology: Concepts and Case Studies Review

Evolutionary Ecology: Concepts and Case Studies
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This book is really great for students interested in evolutionary ecology. All topics are up to date and each chapter is written by experts in their field. A must have for anyone in ecology and evolution!

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Evolutionary Ecology simultaneously unifies conceptual and empirical advances in evolutionary ecology and provides a volume that can be used as either a primary textbook or a supplemental reading in an advanced undergraduate or graduate course. The focus of the book is on current concepts in evolutionary ecology, and the empirical study of these concepts. The editors have assembled a group of prominent biologists who have made significant contributions to this field. They both synthesize the current state of knowledge and identity areas for future investigation. Evolutionary Ecology will be of general interest to researchers and students in both ecology and evolutionary biology. Researchers in evolutionary ecology that want an overview of the current state of the field, and graduate students that want an introduction the field, will find this book very valuable. This volume can also be used as a primary textbook or supplemental reading in both upper division and graduate courses/seminars in Evolutionary Ecology.

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Sunday, October 30, 2011

Chromosome Abnormalities and Genetic Counseling (Oxford Monographs on Medical Genetics) Review

Chromosome Abnormalities and Genetic Counseling (Oxford Monographs on Medical Genetics)
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One of the most important books you will need for education in genetic counselling and interpretation of cytogenetic results. Its a pleasure to read and additionally, delivers insight into psychological problems rising from integration of cytogenetically "abnormal" individuals in the human society.

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Chromosomal abnormalities can cause disability in children, and reproductive difficulty in parents.Many parents and couples seek genetic counseling in order to learn why they, or a relative, may have had a child with a particular collection of medical problems and/or intellectual disability.There may have been a history of multiple miscarriage, or infertility.They may want to know the outlook for a pregnancy, and what the risks might be.These and other questions concerning chromosome abnormalities are addressed in this standard text, which will be of interest to genetic counselors, medical geneticists, pediatricians and obstetricians, infertility specialists, and laboratory cytogeneticists.This third edition has been thorougly updated, and is richly illustrated and fully referenced. New chapters have been written on preimplantation diagnosis and on reproductive risks due to environmental agents. The practical applications of recent advances in molecular cytogentics are noted.The book will give counselors the information that will enable them to help concerned parents accommodate to their particular "chromosomal situation", and to determine what may be, for them, the best course of action.

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Tuesday, October 25, 2011

Are We Hardwired?: The Role of Genes in Human Behavior Review

Are We Hardwired: The Role of Genes in Human Behavior
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I loved Clark's "Sex and the Origin of Death” and "At War Within”. By comparison, I was disappointed in Hardwired. It is a serious , very informative book, and I believe you can trust Clark. The earlier chapters, about one celled animals, a worm, and a fly, were brilliant, and a lot about the basis of human behavior may be learned from them. The material in the first chapter about studies of twins separated at birth is provocative. The problem is that once Clark, or was it Grunstein, got to vertebrates, the material was just not well integrated. Too often the book read as a series of summaries of successive findings, some of which were inconsistent. Yes, Clark had some overarching themes, repeated a number of times, but that doesn't replace a good synthesis. There is much that is partially understood at best, and a lot of research which casts light only on a small piece of the puzzle, making a good synthesis more difficult for conscientious authors, but that just makes their job harder, not impossible. Bottom line: if you are interested in the subject AND in science, including technical details, read this book, until a better one comes along.

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Monday, September 19, 2011

The Art of Genes: How Organisms Make Themselves Review

The Art of Genes: How Organisms Make Themselves
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I always had the feeling that evolution was the inventor of new things and development was a secondary problem of how to build an organism from information already present in the fertilised egg. Now I know what problems need to be solved in building a multicellular organism from a single cell in the first place. Enrico Coen magnificently explains how the head-tail, ventral-dorsal, left-right and inside-outside axis is build out of nearly nothing. The subtitle of the book is a perfect illustration of the task: How organisms make themselves (without help from outside). The problem looked only harder since the discovery of DNA : the information in DNA is one-dimensional, so how to build a 3-dimensional organism on the basis of that? No wonder that people in previous centuries saw miniature humans in egg or sperm. But since that 'solution' was refuted, the problem confronted us again: how do organisms make themselves? Enrico Coen gives deep insights with the help of metaphors derived from art and with the necessary scientific details and without confusing us with too many complexities. Coen explains the crucial role of genes without being a genetic reductionist. His examples are both from animals and plants, wich I find an advantage. This book is an achievement. The only criticism I have is that the main metaphor Coen uses is about colors and all the illustrations are in black-and-white! At least the hardback edition should have color illustrations!

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Over the past twenty years there has been a revolution in biology--for the first time scientists have been able to unravel the details of how organisms make themselves.The mechanisms by which a fertilized egg develops into an adult can now be grasped in a way that was unimaginable a few decades ago. The Art of Genes is the first account of these exciting new findings, and of their broader significance in how we view ourselves. Through a highly original synthesis of sciece and art, Enrico Coen vividly describes this revolution in our understanding of how plants and animals develop.Drawing on a wide range of material--from flowers growing petals instead of sex organs, and flies that develop an extra pair of wings, to works of art by Leonardo and Magritte--he explains in lively accessible prose the meaning of genes.Coen draws parallels between the way genes respond to the developing pattern of an organism and the way an artist responds to a painting being created on canvas, a memorable analogy that shows how the organism develops through an interactive dialogue in which there is no separation between plan and execution. There have been many attempts to resolve the paradox of how organisms make themselves. Lucid, authoritative, and entertaining, The Art of Genes offers fresh and exciting insights into the nature of evolution, development, and human creativity.

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Wednesday, September 14, 2011

The Evolution and Emergence of RNA Viruses (Oxford Series in Ecology and Evolution) Review

The Evolution and Emergence of RNA Viruses (Oxford Series in Ecology and Evolution)
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This book is a tour de force introduction to the field of emerging RNA viruses by one of the world's leading experts in virus evolution. The book progresses rapidly from concise chapters on RNA virus biology, origins and microevolution to detailed discussions of RNA virus macroevolution, (contentious) quasi-species concepts, phylogeography and patterns of RNA virus emergence. Though each chapter may stand alone as a significant contribution, the succession of chapters provides a strong logical framework for understanding the observed epidemiological patterns of RNA emergence. This narrative structure culminates in a series of case studies of emerging RNA viruses that are a fitting conclusion to a book that ties together the molecular evolution of RNA viruses with their emergence and epidemiological dynamics.
In sum, any biologist interested in evolution and/or RNA viruses, from novices to experts, would benefit from and enjoy reading this claret-colored addition to the OUP catalog.

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RNA viruses provide unique insights into the patterns and processes of evolutionary change in real time. The study of viral evolution is especially topical given the growing awareness that emerging and re-emerging diseases (most of which are caused by RNA viruses) represent a major threat to public health. However, while the study of viral evolution has developed rapidly in the last 30 years, relatively little attention has been directed toward linking work on the mechanisms of viral evolution within cells or individual hosts, to the epidemiological outcomes of these processes. This novel book fills this gap by considering the patterns and processes of viral evolution across their entire range of spatial and temporal scales. The Evolution and Emergence of RNA Viruses provide a comprehensive overview of RNA virus evolution. This is the first book to link mechanisms of viral evolution to epidemiological outcomes, incorporating case studies in RNA virus emergence and evolution using topical examples such as influenza, HIV, dengue fever, and rabies. It reveals the underlying evolutionary processes by which emerging viruses cross species boundaries and spread in new hosts.

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Monday, September 12, 2011

Genes, Peoples, and Languages Review

Genes, Peoples, and Languages
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Cavalli-Sforza's invaluable contribution to the understanding of why, before the more recent diasporas, we lived were we lived, spoke what we spoke and looked like what we looked like, was made concrete with the publication, in 1994, of the excellent "The History and Geography of Human Genes". Much less complete than this book were the more recent "The Great Human Diasporas" and Sforza's last book, "Genes, Peoples and Languages". These somewhat summarize what can be found in the pages of "The History and Geography of Human Genes", by the same author,with which they share several maps and tables.
Nevertheless, "Genes, Peoples and Languages" was worth reading, since it incorporates more recent genetic data and linguistic research, and this is what you are looking for if you want to keep up with the advances in this field. A more comprehensive explanation to statistical methods used to define genetic trees and to draw principal component maps, plus an interesting chapter on cultural transmission explaining how, in the microsphere, it helps to operate genetic and linguistic evolution, are novelties in this publication.
Putting aside race and its seemingly subjective definitions, racism and its definetely scientifically undermined fundaments, I would like to recommend this book to those who, like myself, are curious laymen fascinated by the matter of human biological and cultural origins. A more thorough approach to the subject(more maps, tables, trees, drawings and text)you'll find in "The History and Geography of Human Genes, though.

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Friday, September 9, 2011

Haldane, Mayr, and Beanbag Genetics Review

Haldane, Mayr, and Beanbag Genetics
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I find myself very perturbed that this book, which closely follows the previously published excellent and comprehensive paper by Rao and Nanjundiah in the Journal of the History of Biology, makes no mention of the prior work at all. Surely the author and the Oxford University Press must have been aware of the previous study which bears almost the same title and content. What is one to think?

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Haldane, Mayr, and Beanbag Genetics presents a summary of the classic exchange between two great biologists - J.B.S. Haldane and Ernst Mayr - regarding the value of the contributions of the mathematical school represented by J.B.S. Haldane, R.A. Fisher and S. Wright to the theory of evolution. Their pioneering contributions from 1918 to the 1960sdominated and shaped the field of population genetics, unique in the annals of science. In 1959, Mayr questioned what heregarded as the beanbag genetic approach of these pioneers to evolutionary theory, "an input or output of genes, as the adding of certain beans to a beanbag and the withdrawing of others." In 1964, Mayr's contention was refuted by Haldane in a remarkably witty, vigorous and pungent essay, "A defense of beanbag genetics" which compared the mathematical theory to a scaffolding within which a reasonably secure theory expressible in words may be built up. Correspondence between Haldane and Mayr is included.Beanbag genetics has come a long way since 1964. Mayr's (1959) critique of simple uncomplicated population genetics is no longer valid. Population genetics today includes much more than Mayr's beanbag genetics. Population genetics models now include multiple factors, linkage, dominance and epistasis. These may be regarded as the advanced beanbag models. Furthermore, population genetics and developmental genetics have become interdependent. Contemporary beanbag genetics includes molecular clocks, nucleotide diversity, coalescence and DNA-based phylogenetic trees, along with the four major holdovers from classical genetics, mutation, selection, migration and random drift. Molecular genetics has made it possible to study evolution rates at the nucleotide level. It is also possible today to compare DNA similarities and divergence in diverse species of animals and plants, which were not previously crossable.

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